We present a physical model of non-ohmic shunt current in a-Si:H p-i-n solar cells, and validate it with detailed measurements. This model is based on space-charge-limited (SCL) transport through localized p-i-p shunt paths, which can arise from contact metal incorporation in a-Si:H layer. This model explains both the electrical characteristics and the metastable switching behavior of the shunts within an integrated framework. We first verify the SCL model using simulations and statistically robust measurements, and then use this picture to analyze our systematic observations of non-volatile switching in these shunts. Our work not only resolves broad experimental observations on shunt behavior, but also suggests possible techniques for alle...
Lock-in thermography (LIT) is until now the most successful technique for imaging local inhomogeneit...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
The performance of hydrogenated amorphous silicon (a-Si:H) p-i-n solar cells is limited, as they con...
We present a physical model of non-ohmic shunt current in a-Si:H p-i-n solar cells, and validate it ...
In this paper, we present a physical model of the non-Ohmic shunt current ISH in amorphous silicon (...
In this paper, we present a physical model of the non- Ohmic shunt current ISH in amorphous silicon ...
In this letter, we investigate the nature of shunt leakage currents in large-area (on the order of s...
In this letter, we investigate the nature of shunt leakage currents in large-area (on the order of s...
The current-voltage (I-V) characteristics of industrially fabricated, crystalline silicon solar cell...
In this paper, we analyze the effect of local shunts in photovoltaic (PV) solar cells by experimenta...
An analytical model of an amorphous silicon p-i-n solar cell is presented to describe its photovolta...
This article reports on characterization of hydrogenated amorphous silicon (a-Si:H) photovoltaic mod...
Due increasing energy use per capita and increasing world population, the world faces an energy-cris...
We compare the dark current-voltage (IV) characteristics of three different thin-film solar cell typ...
In this paper we present a one-dimensional numerical simulation study concerning the electrical prop...
Lock-in thermography (LIT) is until now the most successful technique for imaging local inhomogeneit...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
The performance of hydrogenated amorphous silicon (a-Si:H) p-i-n solar cells is limited, as they con...
We present a physical model of non-ohmic shunt current in a-Si:H p-i-n solar cells, and validate it ...
In this paper, we present a physical model of the non-Ohmic shunt current ISH in amorphous silicon (...
In this paper, we present a physical model of the non- Ohmic shunt current ISH in amorphous silicon ...
In this letter, we investigate the nature of shunt leakage currents in large-area (on the order of s...
In this letter, we investigate the nature of shunt leakage currents in large-area (on the order of s...
The current-voltage (I-V) characteristics of industrially fabricated, crystalline silicon solar cell...
In this paper, we analyze the effect of local shunts in photovoltaic (PV) solar cells by experimenta...
An analytical model of an amorphous silicon p-i-n solar cell is presented to describe its photovolta...
This article reports on characterization of hydrogenated amorphous silicon (a-Si:H) photovoltaic mod...
Due increasing energy use per capita and increasing world population, the world faces an energy-cris...
We compare the dark current-voltage (IV) characteristics of three different thin-film solar cell typ...
In this paper we present a one-dimensional numerical simulation study concerning the electrical prop...
Lock-in thermography (LIT) is until now the most successful technique for imaging local inhomogeneit...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
The performance of hydrogenated amorphous silicon (a-Si:H) p-i-n solar cells is limited, as they con...